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将C3植物中盐胁迫信号通路与盐度诱导的线粒体代谢过程变化联系起来。

Connecting salt stress signalling pathways with salinity-induced changes in mitochondrial metabolic processes in C3 plants.

作者信息

Che-Othman M Hafiz, Millar A Harvey, Taylor Nicolas L

机构信息

ARC Centre of Excellence in Plant Energy Biology, School of Molecular Sciences, The University of Western Australia, Crawley, Western Australia, WA 6009, Australia.

School of Bioscience and Biotechnology, Faculty of Science and Technology, National University of Malaysia, Bangi, Selangor, 43600, Malaysia.

出版信息

Plant Cell Environ. 2017 Dec;40(12):2875-2905. doi: 10.1111/pce.13034. Epub 2017 Oct 6.

Abstract

Salinity exerts a severe detrimental effect on crop yields globally. Growth of plants in saline soils results in physiological stress, which disrupts the essential biochemical processes of respiration, photosynthesis, and transpiration. Understanding the molecular responses of plants exposed to salinity stress can inform future strategies to reduce agricultural losses due to salinity; however, it is imperative that signalling and functional response processes are connected to tailor these strategies. Previous research has revealed the important role that plant mitochondria play in the salinity response of plants. Review of this literature shows that 2 biochemical processes required for respiratory function are affected under salinity stress: the tricarboxylic acid cycle and the transport of metabolites across the inner mitochondrial membrane. However, the mechanisms by which components of these processes are affected or react to salinity stress are still far from understood. Here, we examine recent findings on the signal transduction pathways that lead to adaptive responses of plants to salinity and discuss how they can be involved in and be affected by modulation of the machinery of energy metabolism with attention to the role of the tricarboxylic acid cycle enzymes and mitochondrial membrane transporters in this process.

摘要

盐分对全球作物产量产生严重的不利影响。植物在盐渍土壤中生长会导致生理胁迫,从而扰乱呼吸、光合作用和蒸腾作用等重要的生化过程。了解植物对盐胁迫的分子反应可为未来减少盐分造成的农业损失的策略提供依据;然而,必须将信号传导和功能反应过程联系起来,以便制定这些策略。先前的研究揭示了植物线粒体在植物盐反应中所起的重要作用。对该文献的综述表明,呼吸功能所需的两个生化过程在盐胁迫下会受到影响:三羧酸循环以及代谢物跨线粒体内膜的运输。然而,这些过程的组成部分受盐胁迫影响或对盐胁迫作出反应的机制仍远未被了解。在此,我们研究了关于导致植物对盐分产生适应性反应的信号转导途径的最新发现,并讨论了它们如何参与能量代谢机制的调节以及如何受到其影响,同时关注三羧酸循环酶和线粒体膜转运蛋白在此过程中的作用。

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